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基于天然来源生物聚合物和食物废料的生物吸附剂用于从水介质中去除亚甲基蓝染料

Biosorbents Based on Biopolymers from Natural Sources and Food Waste to Retain the Methylene Blue Dye from the Aqueous Medium.

作者信息

Blaga Alexandra Cristina, Tanasă Alexandra Maria, Cimpoesu Ramona, Tataru-Farmus Ramona-Elena, Suteu Daniela

机构信息

Department of Organic, Biochemical and Food Engineering, "Cristofor Simionescu" Faculty of Chemical Engineering and Environment Protection, "Gheorghe Asachi" Technical University of Iasi, Prof. Dr. docent D. Mangeron Blvd., No. 73, 700050 Iasi, Romania.

Department of Materials Science, Faculty of Materials Science and Engineering, "Gheorghe Asachi" Technical University of Iasi, Prof. Dr. docent D. Mangeron Blvd., No. 41, 700259 Iasi, Romania.

出版信息

Polymers (Basel). 2022 Jul 3;14(13):2728. doi: 10.3390/polym14132728.

Abstract

The use of a biosorbent based on residual biomass from brewing industry () immobilized in a natural biopolymer (sodium alginate) was investigated for Methylene Blue removal from aqueous medium. , immobilized by a simple entrapment technique and by microencapsulation in alginate was characterized using SEM, EDAX, pH and the biosorption behavior toward organic pollutant, such as cationic dye. The biosorption experiments were studied by assessing, in a first stage, the influence of the most important operational physical parameters on the efficiency of the biosorbent: the initial concentration of the dye, the contact time between phases, the temperature, the dye solution pH, the biosorbent granule size, and the amount of biosorbent. The highest sorption capacity was obtained for the biosorbent obtained by microencapsulation, at pH 9, at biosorbent dose of 5.28 g/L and a contact time of about 100 min. The biosorption equilibrium was then studied by modeling the data on the Langmuir, Freundlich and Dubinin- Radushkevich isotherms. The Langmuir model is best suited for experimental data on both particle sizes leading to a maximum biosorption capacity of 188.679 mg/g at room temperature. The values of the adsorption energy, E, obtained with the help of the Dubinin-Radushkevich model-suggest that the type of mechanism (physical or chemical) involved in the biosorption process depends on the particle size of the biosorbent. The results confirm that the residual microbial biomass of immobilized in a polymeric matrix such as sodium alginate, can be considered an efficient biosorbent in retaining cationic organic dyes present in aqueous solutions in moderate concentrations.

摘要

研究了一种基于酿酒工业残余生物质()固定在天然生物聚合物(海藻酸钠)中的生物吸附剂用于从水介质中去除亚甲基蓝的情况。通过简单包埋技术和在海藻酸盐中微胶囊化固定的,使用扫描电子显微镜(SEM)、能量散射X射线谱(EDAX)、pH值以及对阳离子染料等有机污染物的生物吸附行为进行了表征。生物吸附实验首先通过评估最重要的操作物理参数对生物吸附剂效率的影响来进行研究:染料的初始浓度、相间接触时间、温度、染料溶液的pH值、生物吸附剂颗粒大小以及生物吸附剂的用量。对于通过微胶囊化获得的生物吸附剂,在pH值为9、生物吸附剂剂量为5.28 g/L且接触时间约为100分钟时,获得了最高的吸附容量。然后通过对朗缪尔、弗伦德里希和杜宾宁-拉杜舍维奇等温线的数据进行建模来研究生物吸附平衡。朗缪尔模型最适合两种粒径的实验数据,在室温下导致最大生物吸附容量为188.679 mg/g。借助杜宾宁-拉杜舍维奇模型获得的吸附能E值表明,生物吸附过程中涉及的机制类型(物理或化学)取决于生物吸附剂的粒径。结果证实,固定在海藻酸钠等聚合物基质中的残余微生物生物质可被视为一种有效的生物吸附剂,用于保留中等浓度水溶液中存在的阳离子有机染料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6b4/9269617/3a7f8554e53a/polymers-14-02728-g001.jpg

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